| Medium.ThermodynamicState | state | Medium.setState_pTX(Medium.reference_p, Medium.reference_T, Medium.reference_X) | |
| Medium.DynamicViscosity | eta | Medium.dynamicViscosity(state) | |
| Medium.ThermalConductivity | lambda | Medium.thermalConductivity(state) | |
| Medium.PrandtlNumber | Pr | Medium.prandtlNumber(state) | |
| Medium.AbsolutePressure | p | Medium.pressure(state) | |
| Medium.Temperature | T | Medium.temperature(state) | |
| Medium.Density | d | Medium.density(state) | |
| Medium.SpecificEnthalpy | h | Medium.specificEnthalpy(state) | |
| Medium.SpecificEnergy | u | Medium.specificInternalEnergy(state) | |
| Medium.SpecificEntropy | s | Medium.specificEntropy(state) | |
| Medium.SpecificEnergy | g | Medium.specificGibbsEnergy(state) | |
| Medium.SpecificEnergy | f | Medium.specificHelmholtzEnergy(state) | |
| Medium.SpecificHeatCapacity | cp | Medium.specificHeatCapacityCp(state) | |
| Medium.SpecificHeatCapacity | cp2 | Medium.heatCapacity_cp(state) | |
| Medium.SpecificHeatCapacity | cv | Medium.specificHeatCapacityCv(state) | |
| Medium.SpecificHeatCapacity | cv2 | Medium.heatCapacity_cv(state) | |
| Medium.SpecificEnthalpy | h_is | Medium.isentropicEnthalpy(2*Medium.reference_p, state) | |
| Medium.VelocityOfSound | a | Medium.velocityOfSound(state) | |
| Medium.IsobaricExpansionCoefficient | beta | Medium.isobaricExpansionCoefficient(state) | |
| Medium.IsobaricExpansionCoefficient | beta2 | Medium.beta(state) | |
| SI.IsothermalCompressibility | kappa | Medium.isothermalCompressibility(state) | |
| SI.IsothermalCompressibility | kappa2 | Medium.kappa(state) | |
| Medium.DerDensityByPressure | ddpT | Medium.density_derp_T(state) | |
| Medium.DerDensityByTemperature | ddTp | Medium.density_derT_p(state) | |
| Medium.Density[Medium.nX] | dddX | Medium.density_derX(state) | |
| Medium.MolarMass | MM | Medium.molarMass(state) | |
| Medium.SpecificEnthalpy | h2 | Medium.specificEnthalpy_pTX(Medium.reference_p, Medium.reference_T, Medium.reference_X) | |
| Medium.Density | d2 | Medium.density_pTX(Medium.reference_p, Medium.reference_T, Medium.reference_X) | |
| Medium.ThermodynamicState | state2 | Medium.setState_phX(Medium.reference_p, h, Medium.reference_X) | |
| Medium.ThermodynamicState | state3 | Medium.setState_psX(Medium.reference_p, s, Medium.reference_X) | |
| Medium.ThermodynamicState | state4 | if Medium.singleState then state else Medium.setState_dTX(d, T, Medium.reference_X) | |
| Medium.ThermodynamicState | state5 | Medium.setSmoothState(0.1, state, state2, 0.001) | |
| Medium.BaseProperties | medium | | |
| Real | err_T | abs(medium.T - T) | |
| Real | err_d | abs(medium.d - d) | |
| Real | err_u | abs(medium.u - u) | |
| Medium.ThermodynamicState | state_h_is | Medium.setState_phX(2*Medium.reference_p, h_is, Medium.reference_X) | |
| Medium.SpecificEntropy | s_is | Medium.specificEntropy(state_h_is) | |
| Real | err_h_is | abs(s - s_is) | |